Area of research
Ceramics and Composites · Mechanical Engineering
Research interest
Research interests include Materials science, Sintering, Ceramic, Microstructure, Porosity, and Silicon.
Effect of rejuvenation on mechanical behavior and microstructure of Ti-based metallic glass
Preparation and properties of mullite ceramic-based porous aggregates with high closed porosity utilizing low-voltage electroceramics waste
Preparation of MgO-MgAl2O4 refractories doped with La2O3 and the wetting permeation behavior by alkaline slag
Designing low-carbon MgO–Al2O3–La2O3–C refractories with balanced performance for ladle furnaces
Fabrication of energy-saving MgO with large grain size and low thermal conductivity: Towards a new type of magnesia for high-temperature furnaces
Comparative study of B4C, Mg2B2O5, and ZrB2 powder additions on the mechanical properties, oxidation, and slag corrosion resistance of MgO–C refractories
Effects of key factors on the densification and grain growth behaviour of sintered magnesia from magnesite
The effects of pre-sintering temperature and La2O3 addition on sinterability and corrosion resistance of stoichiometric magnesium aluminate spinel
Influence of pre-synthesized Al2O3–SiC composite powder from clay on properties of low-carbon MgO–C refractories
From magnesite directly to lightweight closed-pore MgO ceramics: The role of Si and Si/SiC
Green synthesis of porous SiC ceramics using silicon kerf waste in different sintering atmospheres and pore structure optimization
Slag Corrosion and Penetration Behaviors of MgAl2O4 and Al2O3 Based Refractories
Analysis of 13Cr bloom solidification structure using CA-FE model
Preparation and Properties of Low-Carbon Al2O3–ZrO2–SiC–C Composite Refractories Containing LaAl11O18 Ceramic Phase